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Volatile loss during heating of lunar mare simulants and related compositions

  • Jennifer Sutherland*
  • , Kai Uwe Hess
  • , Thilo Bissbort
  • , Simon Stapperfend
  • , Axel Müller
  • , Thomas C. Hansen
  • , Alexander Rack
  • , Donald B. Dingwell
  • *此作品的通讯作者
  • Ludwig Maximilian University of Munich
  • Institut Laue-Langevin
  • Technical University of Berlin
  • OHB-System AG
  • European Synchrotron Radiation Facility

科研成果: 期刊稿件文章同行评审

摘要

Due to the scarcity of returned lunar regolith samples, simulants are currently widely used for testing and validation of technologies destined for resource extraction and manipulation on the Moon's surface. Deductions about thermal processing parameters (such as temperature ranges associated with sintering and melting) and material properties rely on a close fidelity of the terrestrially-sourced simulant materials. To evaluate the degassing behaviour of lunar regolith simulants during heating and thereby inform the validity of comparisons to the behaviour expected of actual lunar regolith, we compare profiles via simultaneous differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), and evolved gas analysis (EGA) across a range of designated mare simulants, freshly recovered volcanic samples, and synthesised lunar-like glasses. Simulants generally exhibit higher mass loss (related to volatile release at sub-solidus temperatures) than fresh volcanic material, though overlap is observed with one simulant (JSC-1A). Of the fresh sources, Etna ash most closely limits the anticipated water loss difference to original lunar soils to within one order of magnitude. Results from complementary neutron powder diffraction (NPD) indicate that a lowering of the melting onset due to volatile fluxing persists ca. 200–300 °C beyond the major degassing range in samples of several grams. The possibility to reduce the simulant fidelity gap through critical source selection and their inherent limitations are discussed, and refined pre-treatment recommendations are made.

源语言英语
文章编号123115
期刊Chemical Geology
698
DOI
出版状态已出版 - 20 12月 2025

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